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Reduced Sensitivity of Tropical Cyclone Intensity and Size to Sea Surface Temperature in a Radiative-Convective Equilibrium Environment

机译:辐射对流平衡环境中热带气旋强度和大小对海表温度的敏感性降低

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摘要

It has been challenging to project the tropical cyclone (TC) intensity,structure and destructive potential changes in a warming climate.Here,we compare the sensitivities of TC intensity,size and destructive potential to sea surface warming with and without a pre-storm atmospheric adjustment to an idealized state of Radiative-Convective Equilibrium (RCE).Without RCE,we find large responses of TC intensity,size and destructive potential to sea surface temperature (SST) changes,which is in line with some previous studies.However,in an environment under RCE,the TC size is almost insensitive to SST changes,and the sensitivity of intensity is also much reduced to 3% ℃-1-4% ℃-1.Without the pre-storm RCE adjustment,the mean destructive potential measured by the integrated power dissipation increases by about 25% ℃-1 during the mature stage.However,in an environment under RCE,the sensitivity of destructive potential to sea surface warming does not change significantly.Further analyses show that the reduced response of TC intensity and size to sea surface warming under RCE can be explained by the reduced thermodynamic disequilibrium between the air boundary layer and the sea surface due to the RCE adjustment.When conducting regional-scale sea surface warming experiments for TC case studies,without any RCE adjustment the TC response is likely to be unrealistically exaggerated.The TC intensity-temperature sensitivity under RCE is very similar to those found in coupled climate model simulations.This suggests global mean intensity projections under climate change can be understood in terms of a thermodynamic response to temperature with only a minor contribution from any changes in large-scale dynamics.
机译:预测气候变暖期间热带气旋(TC)的强度,结构和破坏性潜力的变化具有挑战性。在此,我们比较了有无暴风前大气条件下TC强度,大小和破坏性潜力对海面变暖的敏感性。在没有RCE的情况下,我们发现TC强度,大小和破坏潜能对海表温度(SST)变化的较大响应,这与以前的研究一致。在RCE下的环境中,TC的大小对SST的变化几乎不敏感,强度的灵敏度也大大降低到3%℃-1-4%℃-1。在成熟阶段,由于综合功率耗散增加了约25%℃-1。但是,在RCE下的环境中,破坏电位对海面变暖的敏感性没有明显改变。进一步的分析表明: RCE调整后,空气边界层与海面之间的热力学不平衡减少,可以解释RCE下TC强度和大小对海面变暖的响应降低。在进行区域规模的TC案例研究时在没有任何RCE调整的情况下,TC响应可能被夸大了。RCE下的TC强度-温度敏感性与耦合气候模型模拟中发现的非常相似。这表明气候变化下的全球平均强度预测可以理解为对温度的热力学响应,而大规模动力学的任何变化仅贡献很小的一部分。

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  • 来源
    《大气科学进展(英文版)》 |2018年第8期|981-993|共13页
  • 作者

    Shuai WANG; Ralf TOUMI;

  • 作者单位

    State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography, Hangzhou 310000, China;

    Space and Atmospheric Physics Group, Department of Physics, Imperial College London, London SW7 2AZ UK;

    Space and Atmospheric Physics Group, Department of Physics, Imperial College London, London SW7 2AZ UK;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 03:55:46
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